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FLUID MECHANICS FINAL – M/C (Latest Syllabus ) Real Exam Questions | Verified Model Answers | Question Bank

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This document contains verified multiple-choice questions and expert-approved answers for the Fluid Mechanics Final exam, aligned with the 2025–2026 syllabus. Topics include boundary layer theory, Reynolds number, Mach classifications, viscosity types, pump and turbine dynamics, and control volume analysis. Ideal for engineering students, this resource emphasizes conceptual clarity, formula-based reasoning, and real-world fluid behavior applications.

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Uploaded on
August 15, 2025
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Written in
2025/2026
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FLUID MECHANICS
FINAL - M/C

(Latest Syllabus 2025-2026) Real
Exam Questions | Verified Model
Answers | Question Bank


100% Guarantee Pass




✓ This Exam contains: Fluid Mechanics Final - M/C

✓ 100% Accurate Questions and Answers

✓ 100% Guarantee Pass - Verified by Experts

✓ Each Question Includes The Correct Answer

✓ Expert-Verified




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, Question 1
What is friction velocity
Correct Answer
measure of how the fluid can "stick" to a surface and how turbulent flow behaves near that surface

Question 2
Momentum thickness vs displacement thickness
Correct Answer
Momentum thickness (theta)
- measures how much the flow's momentum is reduced near the surface

Displacement thickness
- measures how much the flow is pushed away from the surface due to the slower-moving fluid near the wall

Question 3
what is the velocity at the end of the boundary layer?
Correct Answer
0.999999 x u^infinite

Question 4
major loss vs minor loss (minor head vs major head)
Correct Answer
major
- loss of energy due to (viscous effects) aka friction in a STRAIGHT pipe
- we dont use kL in the equation bc it accounts for the straight part of the pipe... kL depends on the
geometry.

minor
- loss of energy from fittings, bends, and other pipe elements that disrupt the flow.
-kL is in the equation for hL.

Question 5
At what Mach number is air considered incompressible
Correct Answer
less thana 0.3

Question 6
Explain the no slip condition
Correct Answer
at a solid boundary the fluid velocity is 0




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